Christopher Sathiya Satchi, Kumaresan Vellaisamy
Department of Mechanical Engineering, CEG Campus, Anna University, Chennai, 600 025, India.
Environ Sci Pollut Res Int. 2022 Aug;29(40):61135-61147. doi: 10.1007/s11356-022-20209-x. Epub 2022 Apr 18.
The intermittent nature of solar radiation requires a thermal energy storage (TES) system for reducing the mismatch between energy demand and supply. Solar water heating (SWH) systems can help save up to 90% of the utilized energy for water heating. In this study, a compound parabolic concentrator (CPC) solar collector has been coupled to three different configurations of TES system. A comprehensive analysis on the effects of PCMs arrangements in TES systems viz three PCMs (case 1) and five PCMs (case 2) on the energy efficiency, exergy efficiency, and overall loss coefficient of the solar collector and TES system has been made and compared with sensible TES system. An experimental data showed an augmented energy storage of 12% and 41% in "case 1" and "case 2" over sensible TES system as a result of reduction in heat losses with the cascaded arrangement of PCMs. The collector paired with case 2 configuration clearly exhibited a higher exergy efficiency due to supply of heat transfer fluid at relatively lower temperature while compared to other TES configurations. The outcomes of this study reveal the key role of cascaded arrangement of PCMs for enhancing energy and exergy efficiencies of solar collector.
太阳辐射的间歇性需要一个热能存储(TES)系统来减少能源供需之间的不匹配。太阳能热水(SWH)系统有助于节省高达90%的用于水加热的能源。在本研究中,一个复合抛物面聚光器(CPC)太阳能集热器与三种不同配置的TES系统相连。对TES系统中相变材料(PCM)的布置,即三种PCM(案例1)和五种PCM(案例2)对太阳能集热器和TES系统的能量效率、火用效率及总损失系数的影响进行了全面分析,并与显热TES系统进行了比较。实验数据表明,由于采用PCM的级联布置减少了热损失,“案例1”和“案例2”中的储能比显热TES系统分别增加了12%和41%。与其他TES配置相比,与案例2配置配对的集热器由于在相对较低的温度下供应传热流体,明显表现出更高的火用效率。本研究的结果揭示了PCM级联布置对提高太阳能集热器的能量和火用效率的关键作用。